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S Awad

Publications and source records attributed to S Awad.

26 records · Page 2Linked to original sources

Parenteral monoacetoacetin and liver regeneration interaction after partial hepatectomy in the rat.

Parenteral nutrients can be used to manipulate cell proliferation after partial hepatectomy. The relationship among macronutrients--glucose, monoacetoacetin, amino acids--and liver regeneration after partial hepatectomy was investigated. Male rats were anesthetized, received a 70% hepatectomy, and received a low-dose infusion of (1) glucose or (2) monoacetoacetin and a high-dose infusion of (3) glucose, (4) glycerol-glucose, or (5) monoacetoacetin-glucose beginning 6 hours after surgery. The five nonprotein nutrient combinations were infused with and without amino acids. Rats were killed 48 hours after partial hepatectomy, and the label and mitotic indices were determined. Each of the five treatments had a higher label index with amino acids present than with amino acids absent. Low-dose glucose and monoacetoacetin as well as high-dose glucose and glucose-glycerol had higher mitotic indices with amino acids than without amino acids. High-dose monoacetoacetin-glucose was associated with a greater mitotic index than was any other nonprotein substrate treatment, and this response was independent of amino acids being present or absent. In summary, (1) amino acids were needed for maximal cell proliferation rate; (2) the absence of amino acids and not the presence of glucose resulted in reduction of the label and mitotic indices for regenerating liver; (3) high-dose monoacetoacetin increased mitosis with or without amino acids; and (4) monoacetoacetin activity was dose dependent. The results indicate that the best nutrient for treatment of patients with liver injury is acetoacetate. The second best nutrient would be the combination of high-dose glucose and amino acids.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetoacetates↗

Determination of lesion size by ultrasound during radiofrequency catheter ablation.

The catheter tip temperature that is used to control the radiofrequency generator output poorly correlates to lesion size. We, therefore, evaluated lesions created in vitro using a B-mode ultrasound imaging device as a potential means to assess lesion generation during RF applications non-invasively. Porcine ventricular tissue was immersed in saline solution at 37 degrees C. The catheter was fixed in a holder and positioned in a parallel orientation to the tissue with an array transducer (7.5 MHz) app. 3 cm above the tissue. Lesions were produced either in a temperature controlled mode with a 4-mm tip catheter with different target temperatures (50, 60, 70 and 80 degrees C, 80 W maximum output) or in a power controlled mode (25, 50 and 75 W, 20 ml/min irrigation flow) using an irrigated tip catheter. Different contact forces (0.5 N, 1.0 N) were tested, and RF was delivered for 60 s. A total of 138 lesions was produced. Out of these, 128 could be identified on the ultrasound image. The lesion depth and volume was on average 4.1 +/- 1.6 mm and 52 +/- 53 mm3 as determined by ultrasound and 3.9 +/- 1.7 mm and 52 +/- 55 mm3 as measured thereafter, respectively. A linear correlation between the lesion size determined by ultrasound and that measured thereafter was demonstrated with a correlation coefficient of r = 0.87 for lesion depth and r = 0.93 for lesion volume. We conclude that lesions can be assessed by B-mode ultrasound imaging.

Animals↗